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TORSION VIBRATIONS AND DYNAMIC STABILITY OF A MARINE DRIVELINE WITH HYDRAULICALLY ACTUATED MULTI-DISK CLUTCH

机译:用液压驱动多盘离合器散流振动和船用传动系的动态稳定性

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The driveline of many crafts during mooring maneuvers operates in the "trolling" mode, which is characterized by large slippages of the clutch. Sometimes the properties of clutch material and oil lead to the onset of self-excited torsion vibrations and wide fluctuations in torque. To analyze this phenomenon a numerical model of a typical marine driveline is developed, friction characteristics of the clutch are simulated by means of a LuGre model. A parametric stability analysis is carried out to highlight the effect of the parameters of the LuGre friction model on the stability of torsion vibrations. A series of experimental tests is performed on a specific test bench to identify the parameters of the driveline and to validate the numerical model. Results shows that the updated numerical model is able to replicate experimental results.
机译:在系泊时,许多工艺品的传动系在搬运时运行在“拖曲”模式下,其特征在于离合器的大滑动。有时,离合器材料和油的性质导致自激扭转振动的发作和扭矩宽波动。为了分析这种现象,开发了典型的海洋传动系的数值模型,通过Lugre模型模拟离合器的摩擦特性。进行参数稳定性分析,以突出Lugre摩擦模型参数对扭转振动稳定性的影响。在特定的测试台上执行一系列实验测试,以识别传动系的参数并验证数值模型。结果表明,更新的数值模型能够复制实验结果。

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